Molnar, Janka and Fráter, Márk Tibor and Sáry, Tekla and Braunitzer, Gábor and Vallittu, Pekka K (2022) Fatigue performance of endodontically treated molars restored with different dentin replacement materials. DENTAL MATERIALS, 38 (4). e83-e93. ISSN 0109-5641
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Abstract
OBJECTIVES: The aim was to investigate the fatigue performance of endodontically treated (ET) molars restored by various dentin-replacing materials and material configurations. Moreover, the impact of additional adhesive treatment with glass-ionomer cement (GIC) was evaluated.; METHODS: 250 intact molars were collected and randomly distributed into ten groups (n=25). After endodontic procedure standard Class I cavities were prepared and restored with different direct restorative techniques and dentin-replacing materials. Two-group were restored with either packable or flowable short fiber-reinforced composites (SFRCs). Two-group were restored by experimental fiber-reinforced GIC with and without adhesive treatment. Four-group were restored by conventional and resin-modified GICs with or without adhesive treatment. One-group was restored with a dual-cure composite resin and last group was restored with only conventional composite resin (control). Fatigue-survival was measured for all specimens using a cyclic-loading machine until fracture occurred or a number of 40.000 cycles were achieved. Kaplan-Meyer survival analysis was conducted, followed by pairwise log-rank post hoc comparisons. Fracture mode was then examined by means of optical microscopy and SEM.; RESULTS: Group restored with flowable SFRC showed significantly higher survival (p<0.05) compared to all of the groups, except for group restored with packable SFRC (p>0.05). Group restored with fiber-reinforced GIC had significantly (p<0.05) higher survival rates compared to other commercial GICs. SEM demonstrated change of the fracture line when fracture reached the SFRC layer.; SIGNIFICANCE: Direct restoration of Class I in ET molars with the use of SFRCs as dentin-replacing materials demonstrated its ability to reinforce the dental structures and to increase the fatigue resistance in this specific clinical situation. Copyright © 2022 The Authors. Published by Elsevier Inc. All rights reserved.
Item Type: | Article |
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Uncontrolled Keywords: | Fatigue survival; Fiber-reinforced glass ionomer cement; Occlusal cavity; Root canal treated molar teeth; |
Subjects: | R Medicine / orvostudomány > RK Dentistry / fogászat |
SWORD Depositor: | MTMT SWORD |
Depositing User: | MTMT SWORD |
Date Deposited: | 27 Sep 2022 11:17 |
Last Modified: | 27 Sep 2022 11:17 |
URI: | http://real.mtak.hu/id/eprint/149996 |
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